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1.
TbAsO4 undergoes a magnetic phase tranfition at TN = 1.5 K into a helical antiferromagnetic moment configuration. The spiral is planar, with the propagation vector along [001] and the moments perpendicular to [001]. The propagation period is 197 ± 12 A?, equivalent to 31 ± 2 unit cell constants. The neutron diffraction results are discussed in connection with previously measured macroscopic data.  相似文献   

2.
A powder neutron diffraction study has been carried out on 239PuN, which was reported to be antiferromagnetic below T = 13 K. No magnetic ordering has been detected at 4K, the limit of the magnetic ordering which could be detected being μord = 0.25μB per Pu atom. Moreover a neutron scattering length determination of 239Pu was performed which gave a value of b239Pu = (0.81 ± 0.05) × 10-12 cm at neutron wavelength λ = 1.219 A?.  相似文献   

3.
Fe2GeS4 crystallizes in the orthorhombic space group Pnma; the cell parameters are: a = 12,467 A?, b = 7,213 A?, c = 5,902 A?; the crystal structure is isotype with olivine.A magnetic study by the extraction method shows that Fe2GeS4 is paramagnetic until 108°K, then antiferromagnetic until 69°K and finally antiferro- and ferrimagnetic at lower temperatures.Neutron diffraction reveals the magnetic structures at 85 and 4,2°K and explains the anisotropy transition at 69°K.  相似文献   

4.
The magnetic structure of the tetragonal ErCo2Si2 compound is determined by neutron diffraction on powder sample at 4.2 K. The magnetic ordering is connected with a symmetry lowering, magnetic space group P2s1 (Sh72)k = 000. The structure is collinear antiferromagnetic with the erbium magnetic moments making an angle of 56.2° with the c axis. The magnetic moment value for erbium is 6.75μB.  相似文献   

5.
Fe2SiS4(a = 12,407 A?, b = 7,198 A?, c = 5,812 A?, space group Pnma) has the olivine structure; the ferrous ions are located in two kinds of sites: one half in planes of mirror symmetry m, the other half in centers of symmetry. 1?.The magnetic study of this compound by means of magnetization measurements and Mössbauer effect, indicates from 127 K an antiferromagnetic arrangement along oy for the m sites, and an induced partial order of the same kind for the 1? sites. At 33 K, the Fe2+ spins in 1? sites are completely ordered and at the same time takes place a rearrangement of the magnetic structure. The observed complex model is analogous to that of Fe2GeS4, i.e. antiferromagnetic along 0x and ferrimagnetic along Oz.  相似文献   

6.
The ν4 infrared and Raman bands of CH3Cl were analyzed simultaneously. A direct fit yielded a complete set of constants for CH335Cl, including A0 = 5.20530 ± 0.00010 cm?1 and DK = (8.85 ± 0.13) × 10?5cm?1. For CH337Cl an incomplete set of constants was obtained from the infrared band, and A0 = 5.2182 ± 0.0010 cm?1 was estimated by curve fitting of the Raman spectrum. The resulting equilibrium structure is r(CH) = 1.0854 ± 0.0005 A?, r(CCl) = 1.7760 ± 0.0003 A?, and <(HCH) = 110°.35 ± 0°.05.  相似文献   

7.
Using powder neutron diffraction techniques, we have examined the magnetic order of the pseudoternary compound Ho(Rh0.3Ir0.7)4B4 below the Néel temperature TN=2.7K. The magnetic structure consists of stacked antiferromagnetic basal plane sheets forming a body centered tetragonal unit cell, with a sublattice magnetization corresponding to 9.6±0.6μB per Ho3+ion at 1.5 K. Magnetic intensity versus temperature measurements indicate that the transition is second order and reveal no anomalous effects when the compound becomes superconducting at Tc=1.34K.  相似文献   

8.
Neutron diffraction measurements on the CeIn3 compound show that the magnetic ordered phase is an antiferromagnetic one with a propagation vector (12, 12, 12) and a weak value of the magnetic moment 0.48±0.08 μB. Comparison are made with the CeAl2 and CeSn3 cases.  相似文献   

9.
A method to grow single crystals of ammonium vanadate (IV, V) (NH4)2V3O8 has been devised. The crystal structure is tetragonal P4bm; residual factor is R = 0.030. Cell parameters are a = 8.891 ± 0.004 A? and c = 5.582 + 0.002 A?. The V5+ atom lies at the center of a triangular pyramide (VO4 tetrahedron) while the V4+ atom is on A 4-fold rotation axis at the center of a square-based pyramide VO5 whose symmetry point group is almost C4v with the short V = O bond lying along the 4-fold axis parallel to the c edge of the tetragonal cell. Crystals are thin platlets with (001) cleavage planes. The platlets have very often a square or rectangular shape limited by {100} or {110} planes. Each single crystal was not large enough to record a good e.p.r. spectrum, but by sticking on the same quartz plate a score of them it was possible to gather enough crystals so to record correct spectra and by orienting the plate to obtain resonance lines separately for g = 1.9263 et gτ = 1.9755. Measurements at 283 K on powder samples gave times for spin-spin relaxation T2 = 0.4 × 10?7s and for spin-lattice relaxation T1 = 1.6 × 10?7s. The magnetic structure is characterized by an exchange narrowing ωe = 3 × 1010rad/s which corresponds to a transition temperature of about 0.5 K. Static susceptibility measurements at high magnetic field show a paramagnetic behaviour with an antiferromagnetic interaction which is interpreted in the magnetic space group P2c4bm as the interaction between V4+ ions from consecutive planes parallel to (001).  相似文献   

10.
LiFeCl4 and AgFeCl4 are obtained by direct reaction between LiCl or AgCl and FeCl3 at 300°C and 400°C respectively. Both compounds are monoclinic with a = 7.02 (1) A?, b = 6.33 (1) A?, c = 12.72 (4) A?, β = 92° (30') for LiFeCl4 and a = 10.60 (5) A?, b = 6.30 (5) A?, c = 12.34 (10) A?, β = 106° (1) for AgFeCl4.LiFeCl4 is clearly isotypic of LiAlCl4. Magnetic measurements characterize in both cases Fe3+ ions in a high spin tetrahedral situation. LiFeCl4 becomes antiferromagnetic at low temperature (TN?10 K). AgFeCl4 reveals a more complex situation. On contrary to the silver derivative, LiFeCl4 is a good ionic conductor with activation energy of 0.78 eV in the solid state below 105°C, and a sharp increase in the lithium mobility at this temperature.  相似文献   

11.
An EPR study of tetravalent vanadium centers created by room temperature X-irradiation in CaF2 and SrF2 is presented. The production efficiency of these centers is enhanced by previous annealing of the samples at 1000 K in air. The symmetry of V4+ ions is tetragonal and its EPR spectrum can be described by an axial spin Hamiltonian including a Zeeman and hyperfine term with S = 12 and I = 72 (corresponding to 51V nuclei). The following values for the spin Hamiltonian parameters are obtained g = 1.947 ± 0.002, g = 1.935 ± 0.005, A = 500 ± 5 MHz, A = 150 ± 10 MHz in the case of SrF2 and g = 1.945 ± 0.002, A = 505 ± 5 MHz and A < 200 MHz, in the case of CaF2. A model for the center including an interstitial O2? ion is tentatively proposed.  相似文献   

12.
The spontaneous magnetization of the sublattice vs temperature in the antiferromagnetic NiO was measured by the neutron diffraction method. Temperature changes of the Bragg peaks (111), (222), (333) and (444) with the wavelengths of neutrons λI = 4.16A?, λII = 2.08A?, λIII = 1.39A? and λIV = 1.04A?, respectively were simultaneously investigated by the neutron time-of-flight spectrometer. On the basis of these measurements, the transition temperature from the antiferromagnetic into the paramagnetic phase was determined, TN = (523 ± 1)°K. The temperature function of the (111) magnetic peak intensity has been accepted to be I ~ (TN?T). According to the present measurements the critical point exponent is 0.33 ± 0.020.04.  相似文献   

13.
Neutron diffraction studies of polycrystalline PrCo2Si2 and TbCo2Si2 compounds were carried out at 4.2 and 293 K. Both samples have collinear antiferromagnetic order below TN(31(1) and 46(1) K for Pr and Tb compound respectively), with their magnetic moments parallel to the c axis. The ordered magnetic moment values of Pr and Tb at 4.2 K (3.19 and 9.12 μB respectively), are close to the saturation value of the free ions. The corresponding magnetic space group Pl4/mnc (Sh410128) is body-anticentered (k = 111222 refering to Pl cell).  相似文献   

14.
Magnetic susceptibility, specific heat and 133Cs magnetic resonance measurements in a single crystal of CsNiBr3 are reported. The data reveal two magnetic transitions separating the paramagnetic phase from the antiferromagnetic ground state. At the higher transition temperature TN2 = (14.25 ± 0.05)K a net magnetic moment is observed only along the hexagonal c-axis, while only below the lower transition temperature TN1 = (11.75 ± 0.05)K a perpendicular component of the magnetic moment appears also. Above TN2 CsNiBr3 can be described as a one-dimensional antiferromagnet with intrachain exchange interaction JkB = ?(17.0 ± 0.2)K and single-ion anisotropy constant DkB ? ?1.5K. Below TN1, the data are consistent with the non-colinear triangular structure of the Ni2+ moments proposed previously for the isomorphic crystal CsNiCl3. A reduced value of the zero-temperature susceptibility over the classical value is found and atrributed to the zero point deviations.  相似文献   

15.
Neutron diffraction studies and magnetic measurements on the compounds TbNi2Si2 (1), HoCo2Si2 (2) and TbCo2Si2 (3) revealed a collinear antiferromagnetic order below TN = 10 ± 1 K (1), TN = 13 ± 1 K (2) and TN = 30 ± 2 K (3) with the rare earths moments oriented along the c-axis [m0 = 8.8 ± 0.2 μB (1), m0 = 8.1 ± 0.2 μB (2), m0 = 8.8 ± 0.2 μB (3)] and the corresponding wavevector are k = [12120] (1) andk = [ 0 0 1] (2) (3). The magnetic structure of the compounds HoCo2Si2 and TbCo2Si2 consists of ferromagnetic layers perpendicular to the c-axis coupled antiferromagnetically (+?+?) while for TbNi2Si2 the ordering within (0 0 1) plane is antiferromagnetic and the planes (0 0 1) are indeed decoupled.  相似文献   

16.
Upon oxidation of 5.10-dihydro-5.10-diethylphenazine (E2P) with iodine golden-green lustrous crystals of a compound with stoichiometry E2P.I1.6 were isolated. The compound crystallizes in the tetragonal space group D42 with a = 12.321(2) A? and c = 5.330(2) A?. The E2P and I form interpenetrating incommensurate sublattices along c, with an iodine repeat distance of 9.7 Å. Static susceptibility measurements at room temperature give χg = + 0.994 × 10?6g?1 × cm3. This corresponds to one unpaired electron spin per two formular units. Single-crystal EPR indicates that the paramagnetism is associated with weakly interacting E2P+ cation radicals. The 300K-d.c. conductivity of 3×10?2Ω?1cm?1 and activation energy of 0.17±0.02eV for single crystals is consequently associated with the polyiodide chains, and not with the E2P+ cation radicals.  相似文献   

17.
The EPR spectra of thermally treated BaF2: Mn samples is reported. After thermal annealing at 900 K a trigonal Mn2+ center with g=2.000±0.005, |D|=2725±40MHz, |A|=265±10MHz, DA>0, is observed. Annealing at 1200 K produces an orthorhombic Mn2+ center with g=2.00±0.01, |D|=2430±40MHz, |E|=570±20MHz, |A|=265±10MHz, DA<0. The superhyperfine (SHF) structures due to interactions with the neighbouring fluorines indicates that the trigonal manganese interacts with four fluorines, three of them equivalent. The orthorhombic Mn2+ shows interaction with four equivalent fluorine nuclei.  相似文献   

18.
The infrared spectra, indexed X-ray powder diffraction patterns, magnetic susceptibilities between 80 and 300 K, and electron paramagnetic resonance spectra at 80 and 300 K are reported for Cr2O5 and Cr3O8. The results indicate that both oxides are Cr3+/Cr6+ mixed-valence compounds which contain CrO6 octahedra and CrO4 tetrahedra in different ratios. The valence formula for Cr2O5 is Cr3+2Cr6+4O15 and that of Cr3O8 is Cr3+2Cr6+7O24. The X-ray powder data for Cr2O5 and Cr3O8 could be indexed on the basis of a monoclinic unit cell (a = 12.01(2), b = 8.52(1), c = 9.39(1) A? β = 92.0(1)°) and an orthorhombic unit cell (a = 12.01(7), b = 36.60(7) and c = 3.82(1) A?), respectively.  相似文献   

19.
Gold-doped silver chloride annealed in a chlorine atmosphere at 300°C is shown to contain precipitates of AgAuCl4, a compound not previously reported. The substance melts at 265 ± 2°C and has a monoclinic unit cell with a = 11.124 ± 0.008A?, b = 4.105 ± 0.002A?, c = 6.539 ± 0.006A? and β = 93.11 ± 0.05°. Its optical absorption spectrum is discussed and the method of precipitate formation in silver chloride is described in terms of an internal oxidation type of process.  相似文献   

20.
The X-band EPR spectrum of SrCl2:V has been measured at liquid nitrogen temperature. A signal associated with V2+ in a site of trigonal symmetry is observed. The EPR data have been explained using the spin hamiltonian = μβHg?S + D[S2z ? 13S(SH)] + SA?I, with D ? hv, g = 1.957 ± 0.004, g6 = 1.954 ± 0.004, A = 230 ± 5 MHz, A6 = 235 ± 5 MHz. This V2+ defect is similar to those previously reported in fluoride crystals with the fluorite structure.  相似文献   

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